CN102308193A - Pressure meter - Google Patents

Pressure meter Download PDF

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Publication number
CN102308193A
CN102308193A CN200980156430XA CN200980156430A CN102308193A CN 102308193 A CN102308193 A CN 102308193A CN 200980156430X A CN200980156430X A CN 200980156430XA CN 200980156430 A CN200980156430 A CN 200980156430A CN 102308193 A CN102308193 A CN 102308193A
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CN
China
Prior art keywords
pressure
transparency cover
preset pressure
indication piece
preset
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Granted
Application number
CN200980156430XA
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Chinese (zh)
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CN102308193B (en
Inventor
山内武志
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
K K KOGANEI
Koganei Corp
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K K KOGANEI
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Publication of CN102308193A publication Critical patent/CN102308193A/en
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Publication of CN102308193B publication Critical patent/CN102308193B/en
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    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/08Means for indicating or recording, e.g. for remote indication
    • G01L19/10Means for indicating or recording, e.g. for remote indication mechanical
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D13/00Component parts of indicators for measuring arrangements not specially adapted for a specific variable
    • G01D13/02Scales; Dials
    • G01D13/04Construction
    • G01D13/10Construction with adjustable scales; with auxiliary scales, e.g. vernier
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01DMEASURING NOT SPECIALLY ADAPTED FOR A SPECIFIC VARIABLE; ARRANGEMENTS FOR MEASURING TWO OR MORE VARIABLES NOT COVERED IN A SINGLE OTHER SUBCLASS; TARIFF METERING APPARATUS; MEASURING OR TESTING NOT OTHERWISE PROVIDED FOR
    • G01D13/00Component parts of indicators for measuring arrangements not specially adapted for a specific variable
    • G01D13/22Pointers, e.g. settable pointer
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L19/00Details of, or accessories for, apparatus for measuring steady or quasi-steady pressure of a fluent medium insofar as such details or accessories are not special to particular types of pressure gauges
    • G01L19/16Dials; Mounting of dials
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L7/00Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements
    • G01L7/02Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges
    • G01L7/04Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges in the form of flexible, deformable tubes, e.g. Bourdon gauges
    • GPHYSICS
    • G01MEASURING; TESTING
    • G01LMEASURING FORCE, STRESS, TORQUE, WORK, MECHANICAL POWER, MECHANICAL EFFICIENCY, OR FLUID PRESSURE
    • G01L7/00Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements
    • G01L7/02Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges
    • G01L7/04Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges in the form of flexible, deformable tubes, e.g. Bourdon gauges
    • G01L7/043Measuring the steady or quasi-steady pressure of a fluid or a fluent solid material by mechanical or fluid pressure-sensitive elements in the form of elastically-deformable gauges in the form of flexible, deformable tubes, e.g. Bourdon gauges with mechanical transmitting or indicating means

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  • Physics & Mathematics (AREA)
  • General Physics & Mathematics (AREA)
  • Measuring Fluid Pressure (AREA)

Abstract

A pressure gauge 10 has an indicator needle 23 and a scale plate 22. A preset pressure indicating member 31 extending along a pressure scale in a circular arc pattern is slidably attached to a front wall 11 of a case 13, and provided with a first display section 35. An opaque shield portion 36 provided with a second display section 37 at one end thereof is provided to a transparent cover 26 rotatably attached to the front wall. The transparent cover 26 drives the preset pressure indicating member 31 to set a preset pressure range between the first display section 35 and the second display section 37 which is observable from the outside through the transparent cover 26. Therefore, it is easy to change a preset pressure range which is within a measurable range of the pressure gauge.

Description

Pressure gauge
Technical field
The present invention relates to a kind of pressure gauge, this pressure gauge is used to measure the pressure of the fluid that is supplied in fluid pressure device, and can set the preset pressure scope arbitrarily, and this preset pressure scope indication is supplied in the fluid of fluid pressure device.
Background technology
Be used for from pneumatic supply to topworks for example the pneumatic circuit of pneumatic cylinder supplied with compressed air comprise fluid pressure device; This fluid pressure device has transfer valve, pressure control valve, filtrator and pipeline configuration; Said transfer valve is used to switch stream; Said pressure control valve is used for controlled pressure; Said filtrator is used for removing dust, water or the like from pressurized air, and said pipeline configuration is used to connect said modules.Similarly, be used for comprising fluid pressure device to the hydraulic circuit of hydraulic actuating mechanism sap pressure supply, for example pressure control valve from hydraulic power source.The pressure gauge that is used for measuring fluid pressure is used to such fluid pressure device, and as stated, this fluid pressure device is to be used in the hydrodynamic pressure loop that is used for driving execution mechanism, and this topworks is driven or hydraulic-driven by air pressure.
A kind of similar pressure gauge is arranged, and this pressure gauge shows gaging pressure with indicator pointer, also has a kind of Bourdon tube U-tube manometer with Bourdon tube (Bourdon tube) to be often used in the pressure gauge of this type.In having the similar pressure gauge of indicator pointer, marked by the pressure scale on the scaleplate of indicator pointer indication, so that this pressure gauge can be used to the different fluids pressure circuit based on the scale of pressure gauge measurable range.For example, in being applied to a kind of pressure gauge of pneumatic circuit, be marked with the pressure scale based on measurable range, this measurable range is counted MPa from minimum value 0MPa to maximal value.Yet under many circumstances, actual provision is in the air pressure of pneumatic circuit is in than the little scope of said manometric measurable range.For example, even pressure gauge can be measured to 1.0MPa, in having said manometric pneumatic circuit, hydrodynamic pressure possibly only be used to 0.4MPa within the on-stream pressure scope between the 0.6MPa.In this case, the operator need check whether the air pressure of each pneumatic shuttle that is supplied in the pneumatic circuit is within the on-stream pressure scope of appointment through observing pressure gauge.
Patent documentation 1 and 2 discloses a kind of pressure gauge, and this pressure gauge has the preset labelling apparatus of ability indicated pressure scope.
The prior art document
Patent documentation
Patent documentation 1: specially permit communique No. 3717621
Patent documentation 2: Te Kaipingdi 06-52215 communique
Summary of the invention
Pressure gauge described in the patent documentation 1 comprises protecgulum and opaque keeper; Said protecgulum hides indicator pointer; And be formed with transparent circular slab, have the scale of measurable range on this transparent circular slab, said opaque keeper is used to keep said transparent circular slab.Two preset labelling apparatus are arranged in the gap between keeper and the circular slab movably, are used for the higher limit and the lower limit of corresponding preset pressure scope, and each preset labelling apparatus is arranged on the rear side of said scale and outstanding towards the back side of protecgulum.
In this way, when preset labelling apparatus was configured in the back side of the transparent circular slab with measurable range scale, preset labelling apparatus and scale were overlapping.Therefore; For whether the check indicator pointer is positioned at the preset pressure scope, be necessary visually to check preset labelling apparatus, this preset labelling apparatus shows higher limit and lower limit through scale; Therefore a problem is arranged, and the definite preset pressure scope of a glance is had any problem exactly.In addition, in order to change the preset pressure scope, the position that is necessary to remove protecgulum and adjusts the preset labelling apparatus that is positioned at the protecgulum back side.Therefore, whether suitable for the position of checking adjustment, be necessary the protecgulum that overturns, from the position relation between the position of the position of the preset labelling apparatus of front inspection and scale, so the change of preset pressure scope is a trouble.
On the other hand, the pressure gauge described in the patent documentation 2 comprises scaleplate and a pair of cover plate, and said scaleplate has the scale of measurable range, and said a pair of cover plate rotatably connects along scaleplate excircle part.Be formed with at the outer circumference portion branch of scaleplate and show band, and the preset pressure scope by demonstration with on the zone that hidden by said a pair of covering plate show that wherein this relatively rotates to hide with part to covering plate and shows band.
In this way, covering plate is configured in the front side of scaleplate, and covering plate supports by scaleplate, and when carrying out the rotary manipulation of covering plate, extra load puts on the scaleplate, the danger that has the scaleplate distortion or damage.Therefore, be necessary through make with metal material scaleplate or very firmly fixedly scaleplate improve the intensity of scaleplate.The result is, the become cost increase of complicated and this operation of the assembly operation of scaleplate.
The objective of the invention is in manometric measurable range, to be easy to change the preset pressure scope, and improve the visuality of preset pressure scope.
Another object of the present invention is to prevent that pressure gauge is not out of shape because of the extra load that applies when setting the preset pressure scope or damages.
Pressure gauge according to the present invention comprises indicator pointer and scaleplate; The angle of said indicator pointer rotation is corresponding with hydrodynamic pressure; Said scaleplate indicates pressure scale, and this pressure scale is by the rotate path indication of said indicator pointer along this indicator pointer.Said pressure gauge comprises: pressure gauge main body, antetheca, preset pressure indication piece, transparency cover, opaque shaded portions and driving claw; Said pressure gauge main body comprises said scaleplate and said indicator pointer; And have device for pressure measurement, this device for pressure measurement is configured to corresponding hydrodynamic pressure and rotates said indicator pointer; Said antetheca is formed with circular pilot hole, and is connected in said pressure gauge main body, and said scaleplate is exposed to the external world through said circular pilot hole; Said preset pressure indication piece is circular arc along said pressure scale and extends, and an end has first display part, and this preset pressure indication piece is connected in said antetheca slidably along said pilot hole; Said transparency cover rotatably is connected in said pilot hole, and is configured to cover said preset pressure indication piece and said scaleplate; Said opaque shaded portions is circular arc along said pressure scale and extends, and be positioned on the said transparency cover, and an end has second display part; Said driving claw portion is positioned on the said transparency cover; And be configured to be positioned at said preset pressure indication piece on driven claw contact; Make said preset pressure indication piece carry out the rotation of servo-actuated ground; Wherein, Said preset pressure indication piece rotates towards a direction through said transparency cover; To set the position of said first display part, said transparency cover rotates in the opposite direction, to set the position of said second display part.
In pressure gauge according to the present invention, said transparency cover has the operating portion that is used for rotary manipulation.In pressure gauge according to the present invention, said transparency cover has a plurality of driving claws, and these drive claw and engage with the back side of said antetheca, and said transparency cover rotatably is connected in said antetheca through said driving claw.
According to the present invention; When transparency cover rotates towards a direction; And when the preset pressure indication piece is driven by said transparency cover; The position of first display part is set; When said transparency cover rotates in the opposite direction; The position of second display part is set, and the preset pressure scope in said manometric measurable range is shown in the external world through the zone between said first display part and said second display part.Therefore, the preset pressure scope can easily be changed through the rotary manipulation of said transparency cover.
The part between first display part and second display part of preset pressure indication piece; Can see through transparency cover observes from the external world; Therefore the visuality of preset pressure scope is improved, and whether operator's a glance just can be in the preset pressure scope by the check indicator pointer.
When setting the preset pressure scope, do not have external force to be applied on the scaleplate, so scaleplate not have the danger of distortion or damage, and manometric durability access raising.
Description of drawings
Fig. 1 is the pressure gauge front view according to one embodiment of the present invention;
Fig. 2 is the front-side perspective view of manometric decomposition shown in Figure 1;
Fig. 3 is the backside perspective view of manometric decomposition shown in Figure 1;
Fig. 4 is for to be fixed on the manometric perspective section view under the situation on the pressure gauge at transparency cover and preset pressure indication piece;
Fig. 5 A is for to be fixed on the said manometric rear view under the situation on the pressure gauge at said transparency cover and said preset pressure indication piece;
Fig. 5 B is the said manometric amplification view along the 5B-5B line among Fig. 5 A;
Fig. 6 A is the said manometric rear view under the situation that is rotated predetermined angle in the said transparency cover position that this transparency cover belongs to from Fig. 5 A;
Fig. 6 B is the said manometric amplification view along the 6B-6B line among Fig. 6 A;
Fig. 7 A is the said manometric rear view under the situation that is rotated predetermined angle in the said transparency cover position that this transparency cover belongs to from Fig. 6 A;
Fig. 7 B is the said manometric amplification view along the 7B-7B line among Fig. 7 A;
Fig. 8 A is the front view that is used to illustrate a kind of setting program of manometric preset pressure scope shown in Figure 1;
Fig. 8 B is the front view that is used to illustrate a kind of setting program of manometric preset pressure scope shown in Figure 1;
Fig. 9 is the pressure gauge front view according to another embodiment of the present invention;
Figure 10 A is the front-side perspective view according to the manometric transparency cover and the preset pressure indication piece of another embodiment of the present invention;
Figure 10 B is the backside perspective view of parts shown in Figure 10 A;
Figure 11 is the cut-open view that is connected with the housing of transparency cover shown in Figure 10 and preset indication piece; And
Figure 12 is for being connected with the cut-open view of the housing of transparency cover and preset pressure indication piece in the pressure gauge according to another embodiment of the present invention.
Embodiment
Below, will be elaborated to embodiment of the present invention with reference to the accompanying drawings.To shown in Figure 3, pressure gauge 10 has resin-case 13 like Fig. 1, and this housing 13 comprises rectangular front wall 11 and four left and right, the upper and lower sidewall 12a to 12d that are positioned at this housing 13.Said housing 13 integral body are that rectangle is cube shaped, and back open.To shown in Figure 3, the pressure gauge main body 14 that is installed in the housing 13 has resin support plate 15 like Fig. 2, and this support plate 15 contacts with the back side of housing 13, and has device for pressure measurement 16.On the upper side wall 12a of housing 13 and lower wall 12b, have draw ring part (tab portions) 17; This draw ring part 17 is outstanding backward from sidewall separately; Simultaneously, on said support plate 15, have connecting protrusion 18, this connecting protrusion 18 is corresponding with draw ring part 17 separately.When support plate 15 contacted with housing 13, connecting protrusion 18 engaged with conjugate foramen 17a separately on the draw ring part 17, thereby pressure gauge main body 14 is connected on the housing 13.
To shown in Figure 3, device for pressure measurement 16 has substantially cylindrical, and housing 13 has the cylindrical accommodation hole that can hold said device for pressure measurement 16 like Fig. 2.Four angles of said housing 13 are thicker than the remainder of this housing 13.
Device for pressure measurement 16 has the flat Bourdon tube (Bourdon tube) 19 of the circular arc of being bent to, and promptly pressure gauge 10 is Bourdon tube U-tube manometers.The bottom part of said Bourdon tube 19 is fixed in support plate 15, and the mechanical hook-up that does not show among head portion and the figure is connected.As shown in Figure 3, be used for guiding the fluid conduit systems 20 of the fluid of Bourdon tube 19 to be connected in Bourdon tube 19, this fluid conduit systems 20 is outwards outstanding from the back side of support plate 15.When the pressure that is supplied in the fluid Bourdon tube 19 in via fluid conduit systems 20 when the head portion of said Bourdon tube 19 was subjected to displacement, this displacement was through the mechanical hook-up amplification and pass to turning axle 21.
Limbus plate 22 is connected in support plate 15, and radially is marked on the said scaleplate 22 based on the pressure scale of the measurable range of pressure gauge 10.The measurement range of this pressure gauge 10 is to 1.0MPa from 0.The figure notation of indicated pressure value is on said scaleplate 22, and pressure scale increases 0.2MPa at every turn.Indicator pointer 23 is connected in turning axle 21, and the pressure of the angle of the rotation fluid interior with importing Bourdon tube 19 is corresponding.Therefore, the gaging pressure of fluid is given extraneous observer through the position display of said indicator pointer 23, and said indicator pointer 23 points to along the pressure scale of the path tag of this indicator pointer 23.
As shown in Figures 2 and 3, be formed with circular pilot hole 24 on the antetheca 11.When pressure gauge main body 14 was connected in housing 13, as shown in Figure 1, scaleplate 22 was visible through said pilot hole 24 for the operator.To shown in Figure 7, be formed with the recess 25 of annular like Fig. 5 on the antetheca 11, the diameter of this recess 25 is bigger than the diameter of pilot hole 24, and the transparency cover 26 of the circle that is formed by transparent resin material rotatably is connected in the recess 25 of said annular.As shown in Figure 3, the back side of transparency cover 26 promptly on the inside surface of transparency cover 26, has two claw 27a and 27b, and these two claw 27a and 27b engage with the back side of said antetheca 11, each other at a distance of about 180 degree, and along the circumferential direction inwardly outstanding.Through said claw 27a and 27b are engaged with the back side of antetheca 11, can prevent that transparency cover 26 from separating with antetheca 11, makes transparency cover 26 rotatably be connected in antetheca 11.As shown in Figure 3; The back side of transparency cover 26 has the guide part 28 of arc; This guide part 28 along the circumferential direction extends between two claw 27a and 27b, and inwardly outstanding from the inside surface of transparency cover 26, and the guide part 28 of this arc has the gap towards between the inside surface of pilot hole 24 and the two.
As depicted in figs. 1 and 2; Have exercisable teat 29a and 29b on the excircle part of the outside surface of transparency cover 26; This teat 29a and 29b are as operating portion; Along the circumferential direction each other at a distance of about 180 degree; Along the circumferential direction outwards outstanding, operate when rotating transparency cover 26 by the operator.Said teat 29a and 29b and claw 27a and 27b are along the circumferential direction at a distance of about 90 degree.The operator can rotate transparency cover 26 through catch said teat 29a and 29b with thumbtip and tip.As operating portion, recess can be set on transparency cover 26 replace said teat 29a and 29b.In this case, the rotary manipulation of transparency cover 26 can be accomplished through instrument is hooked in the said recess.
Shown in Fig. 5 A to Fig. 7 B, between the recess 25 of the inner circumferential surface of the pilot hole on the antetheca 11 24 and annular, be formed with the recess 30 of annular, the internal diameter of this recess 30 is bigger and littler than the internal diameter of recess 25 than the internal diameter of pilot hole 24.Shown in Fig. 7 B, in the recess 30 of said annular, be connected with the preset pressure indication piece 31 of arc slidably along pilot hole 24.Preset pressure indication piece 31 is formed from a resin, and as shown in Figures 2 and 3, comprises the guide part 33 that shows band portion 32 and arc, and said demonstration band portion 32 is towards the back side of transparency cover 26, and the guide part 33 of said arc is outstanding backward from the inner circumferential surface that shows band portion 32.The demonstration band portion 32 of said arc is arranged to the excircle part of partly overlapping transparency cover 26, and is positioned at the radial outside of the pressure scale of scaleplate 22 marked.
Shown in Fig. 5 B and Fig. 7 B, guide part 33 is installed between the guide part 28 and pilot hole 24 of transparency cover 26, and when preset pressure indication piece 31 slided with respect to transparency cover 26 with the rotation of transparency cover 26, said guide part 33 was by guide part 28 guiding.Preset pressure indication piece 31 is installed in the inboard of transparency cover 26, and therefore, said preset pressure indication piece 31 is covered by transparency cover 26 with scaleplate 22, and the pressure scale on the scaleplate 22 can see through transparency cover 26 and observes from the external world.
Preset pressure indication piece 31 has the length of circumferentially extending with the α angle around rotation center, and this α angle is approximately 140 degree.Shown in Fig. 5 A and Fig. 5 B, the bottom part of preset pressure indication piece 31 has the claw 34 that engages with the back side of antetheca 11.Through the back side of claw 34 with antetheca 11 is engaged, make preset pressure indication piece 31 be connected in antetheca 11 slidably.
Preset pressure indication piece 31 is by forming with housing 13 color material different.Therefore, when observing pressure gauge 10, can see through transparency cover 26 and clearly observe preset pressure indication piece 31 from the external world.For example, when housing 13 is grey or white, then preset pressure indication piece 31 can be green, red, black or similar color, to such an extent as to can know on color that the area is not in housing 13.As the part of preset pressure indication piece 31, can observe the front surface that shows band portion 32 from the external world.If preset pressure indication piece 31 can varnish with lacquer on the front surface of index strip portion 32 by processing with the material of housing 13 color similarities, this painting color is different from the color of housing 13, and is for example green.The coboundary of preset pressure indication piece 31, promptly the edge of the indication piece of preset pressure shown in Fig. 1 31 left end portion is first display parts 35, and the minimum value in these first display part, 35 demonstration preset pressure scopes.
First display part 35 can radially be provided with a line and form through an edge along preset pressure indication piece 31, rather than an edge of qualification preset pressure indication piece 31 is as said first display part 35.Like this, the color of preset pressure indication piece 31 can be identical with the color of housing 13.Preset pressure indication piece 31 can form longer than the length shown in the figure, and can only tint in the zone of indication preset pressure scope.In this case, the tint outline line at an edge in zone is defined as said first display part 35.
To shown in Figure 3, be formed with the opaque shaded portions 36 of circular arc like Fig. 1 along pressure scale in the excircle part of transparency cover 26.Said shaded portions 36 is identical apart from the distance of rotation center with preset pressure indication piece 31 apart from the distance of rotation center.This shaded portions 36 can be overlapping demonstration band portion 32, and be placed in the radial outside of the pressure scale on the scaleplate 22.In addition, said shaded portions 36 extends the β angle along the circular arc direction around rotation center, and this β angle is about 140 degree, corresponding to preset pressure indication piece 31.Therefore, when transparency cover 26 rotation special angles, preset pressure indication piece 31 can be hidden by said shaded portions 36 fully.The color of shaded portions 36 is different with the color on the preset pressure indication piece that is positioned at transparency cover 26 back sides 31 surfaces, and said shaded portions 36 can see through the transparency cover processed by transparent material 26 and is observed from the external world.
Preferably, shaded portions 36 and housing is similar in color.In addition, shaded portions 36 can form through on the front surface of transparency cover 26, coating being set.Can on the front surface of transparency cover 26 or rear surface, be connected with circular arc and bring and form shaded portions 36, to replace being provided with coating.
As depicted in figs. 1 and 2, cornerwise two angles that are of from four angles of antetheca 11, picking out have connecting hole 41 respectively, and inserting bolt is in setting pressure 10 in said connecting hole 41, and this bolt is not shown in the diagram.Support plate 15 has the through hole 42 corresponding with said connecting hole 41.The diameter of the front part of the connecting hole 41 on the antetheca 11 is bigger than the diameter of bolt head, so that bolt head is placed in one.
The edge of the left end portion of shaded portions 36 is defined as second display part 37 among Fig. 1, and this second display part 37 is used to indicate the maximal value of preset pressure scope.Therefore; If preset pressure indication piece 31 is along the position of pilot hole 24 slips with an end face of setting preset pressure indication piece 31; I.e. first display part 35; And rotation transparency cover 26 is with the position of an end face edge of setting shaded portions 36; I.e. second display part 37; The zone that the not crested part of preset pressure indication piece 31 36 is covered, promptly the zone between first display part 35 and second display part 37 sees through transparency cover 26 and is shown in the external world.As shown in Figure 1, the 0.4MPa that shows through first display part 35 is as the minimum value of on-stream pressure, and the 0.6MPa that shows through second display part 35 is as the maximal value of on-stream pressure, and the scope between these two force value is exactly the preset pressure scope.
The claw 27a that is positioned at transparency cover 26 back sides contacts with the back side of antetheca 11 with 27b, and the claw 34 that is positioned on the preset pressure indication piece 31 also contacts with the back side of antetheca 11.Therefore, when rotation transparency cover 26, the claw 27a of transparency cover 26 contacts with the claw 34 of preset pressure indication piece 31 with 27b, thereby preset pressure indication piece 31 is driven along pilot hole 24 by transparency cover 26.By this way, claw 27a on the transparency cover 26 and 27b are as driving claw, and the claw 34 on the preset pressure indication piece 31 is then as driven claw.
As shown in Figure 1, pressure gauge 10 has from 0 to 1.0MPa measurable range.For example; When the pneumatic circuit with said pressure gauge 10 is used in the air pressure range from 0.4MPa to 0.6MPa; For whether the pressure that is easy to observe this pneumatic circuit is in this scope; With the preset pressure scope of setting between first display part 35 and second display part 37, and then it is shown in the external world.
Fig. 8 A and Fig. 8 B are the front views that shows the setting program of preset pressure scope.For example; Shown in Fig. 8 A; Position and second display part 37 that is arranged on corresponding 0MPa in first display part 35 is arranged under the situation of position of corresponding 0.2MPa; When the preset pressure scope is set at from 0.4MPa to 0.6MPa; The operator at first is placed on his finger on protrusion 29a and the 29b; And towards direction rotation transparency cover 26, promptly shown in Fig. 8 A toward the clockwise direction.The result is drive claw 27a and contact with driven claw 34, and preset pressure indication piece 31 to be moved along pilot hole 24 by transparency cover 26 drivings toward the clockwise direction.Fig. 8 B is through rotating transparency cover 26 toward the clockwise direction, making pressure indication piece 31 driven the front view that arrives the position of 0.4MPa up to first display part 35 by transparency cover 26.When preset indication piece 31 is driven to said position, drives claw 27a and contact with driven claw 34.
In this case, when the reverse direction of operator through the above-mentioned direction of court, i.e. counter clockwise direction as shown in Figure 8; Operation protrusion part 29a and 29b; During with rotation transparency cover 26, drive claw 27a and separate, and have only transparency cover 26 towards rotation counterclockwise with driven claw 34.When the position that transparency cover 26 rotations arrive 0.6MPa up to second display part 37; As shown in Figure 1; Zone on the preset pressure indication piece 31 between first display part 35 and second display part 37 sees through transparency cover 26 and is exposed to the external world, and remainder crested part 36 is covered.Therefore; As shown in Figure 1; First display part 35 arrives the position of 0.4MPa and the position that second display part 37 arrives 0.6MPa; Therefore the preset pressure scope of preset pressure indication piece 31 is exposed to the external world through said transparency cover 26; And as shown in Figure 1, the preset pressure scope is set to 0.4MPa to 0.6MPa.
In this way; For the minimum value of setting the preset pressure scope through first display part 35; Under the pressure ratio of 35 present positions, first display part situation little by the minimum value of these first display part, 35 settings; Rotate transparency cover 26 toward the clockwise direction, arrive the minimum value position of setting by this first display part 35 up to first display part 35.On the other hand; Under the pressure ratio of 35 present positions, first display part situation big by the minimum value of these first display part, 35 settings; Towards counterclockwise rotating transparency cover 26; To drive preset pressure indication piece 31; Arrive the minimum value position of setting by this first display part 35 up to first display part 35, perhaps arrive the little position of pressure than the minimum value of setting by this first display part 35.At this moment, drive claw 27b and contact, and the rotation of transparency cover 26 passes to preset pressure indication piece 31 with driven claw 34.In this case, transparency cover 26 rotates toward the clockwise direction.As stated, after the minimum value of preset pressure scope shows through first display part 35,, rotate transparency cover 26 toward the clockwise direction for second display part 37 being set to the peaked position of setting by this second display part 37.
In the pressure gauge 10 shown in the figure, two claw 27a and 27b are set to drive claw.Therefore, when transparency cover 26 rotated toward the clockwise direction, claw 27a contacted with claw 34.When transparency cover 26 rotated towards counter clockwise direction, claw 27b contacted with claw 34.If three claws equally spaced are arranged on the back side of transparency cover 26 at circumferencial direction; Two adjacent on the circumferencial direction of claw 34 claws contact with claw 34, and remaining claw is as the parts that are used for rotatably guiding transparency cover 26 on antetheca 11, to move.
Fig. 9 is the front view that shows the pressure gauge 10 of another embodiment of the invention.In this pressure gauge 10, the relation of arranging that is arranged between said shaded portions 36 and the preset pressure indication piece 31 of transparency cover is opposite with this relation in the pressure gauge 10 shown in Fig. 1.In such pressure gauge 10, first display part 35 of preset pressure indication piece 31 is configured to show the maximal value of preset pressure scope, and second display part 37 of shaded portions 36 is configured to show the minimum value of preset pressure scope.Therefore, the program of the preset pressure scope of set pressure meter 10 is different with this program shown in Fig. 1, that is to say, preset pressure indication piece 31 slides to show maximal value through the rotation of transparency cover 26, and transparency cover 26 is rotated to show minimum value.
Figure 10 is the skeleton view according to transparency cover in the pressure gauge 10 of another embodiment of the invention 26 and opaque shaded portions 36.Figure 10 A is the front-side perspective view of these parts, and Figure 10 B is the backside perspective view of these parts.Figure 11 is the cut-open view that is connected with the housing of transparency cover 26 and preset pressure indication piece 31.
Like Figure 10 A, Figure 10 B and shown in Figure 11, the front surface of transparency cover 26 is provided with recess 39a and 39b as operation part, unlike the transparency cover shown in Fig. 1 26.Therefore, in such pressure gauge 10, the rotary manipulation of transparency cover 26 is realized through instrument is hooked among recess 39a and the 39b.Though said recess 39a and 39b form the through hole on the transparency cover 26, these recesses 39a and 39b also can form the band hole at the end.In addition, preset pressure indication piece 31 is identical with the configuration in the above-mentioned pressure gauge 10.
Like Figure 10 A, Figure 10 B and shown in Figure 11, on the external peripheral surface of transparency cover 26, be formed with protuberance 26a, on the inner circumferential surface of the recess 25 of annular, be formed with recess 25a, this recess 25a engages with protuberance 26a on the transparency cover 26.Therefore; Not through the pilot hole 24 that a plurality of claw 27a and 27b rotatably are connected in transparency cover 26 antetheca 11 is set; Pressure gauge 10 as shown in fig. 1; But the inner circumferential surface of recess 25 through annular that the outer circumference portion branch of transparency cover 26 is packed into is connected in antetheca 11 rotationally with transparency cover 26.In such pressure gauge 10, the back side of transparency cover 26 is provided with a claw 27 as driving claw.Transparency cover 26 clockwise direction rotations with counterclockwise rotate under the both of these case, claw 27 contacts with driven claw 34, and the rotation of transparency cover 26 is passed to preset pressure indication piece 31 and makes it slip.Yet, also can with the identical mode of pressure gauge shown in Fig. 1 10, on transparency cover 26, be provided with and only have a plurality of claws 27 that drive the claw function.
Figure 12 is the cut-open view according to the pressure gauge 10 of another embodiment of the present invention, and Figure 12 has shown pressure gauge 10 and the identical part shown in Figure 11.Different with the pressure gauge 10 among Figure 10 A, Figure 10 B and Figure 11; On the transparency cover 26 of this pressure gauge 10; Recess 26b is formed on the external peripheral surface of transparency cover 26, and the protuberance 25b that cooperates with said recess 26b then is formed on the inner periphery of annular recess 25.By this way, when the excircle of transparency cover 26 part engaged with said annular recess 25, the outer circumference surface of transparency cover 26 can be protuberance and a recess as shown in Figure 12 as shown in Figure 11.
In the pressure gauge 10 shown in the figure, be arranged at transparency cover 26 inboard preset pressure indication pieces 31 and driven by transparency cover 26, therefore, the position of first display part 35 of preset pressure indication piece 31 is through transparency cover 26 settings and adjustment.On the other hand, second display part 37 is formed by the edge that is positioned at the opaque shaded portions 36 on the transparency cover 26, and the position of second display part 37 is through rotation transparency cover 26 settings and adjustment.Like this; Rotary manipulation through transparency cover 26 can easily be set the preset pressure scope; This preset pressure scope shows between two display parts 35 in the demonstration band portion 32 of preset pressure indication piece 31 and 37, and sees through transparency cover 26 and be exposed to extraneous to be observed.In addition, when setting and during adjustment preset pressure scope, the operator is without touch scaleplate 22, so scaleplate 22 can not be out of shape or damage, thereby can improve the durability of pressure gauge 10.
Therefore the preset pressure scope radially is shown in the outside of the pressure scale of scaleplate 22, has improved the visuality of preset pressure scope, and can observe indicator pointer 23 from the external world whether in the preset pressure scope at a glance.
The invention is not restricted to above-mentioned embodiment, under the prerequisite that does not break away from purport of the present invention, can carry out multiple modification the present invention.For example, though antetheca 11 is as a whole with housing 13 formation of pressure gauge 10, housing also can be formed to 12d and support plate by sidewall 12a, and the antetheca 11 of rectangle then can be connected to the front of housing.The shape of housing 13 is not limited to the rectangle shown in the figure, also can be circular.
Industrial applicibility
Pressure gauge according to the present invention can be used in the for example pressure of the fluid in the air pressure loop of test fluid pressure circuit.

Claims (3)

1. pressure gauge; This pressure gauge comprises indicator pointer and scaleplate; The angle of said indicator pointer rotation is corresponding with hydrodynamic pressure; Said scaleplate indicates pressure scale; This pressure scale is by the rotate path indication of said indicator pointer along this indicator pointer, and said pressure gauge comprises:
The pressure gauge main body, this pressure gauge main body comprises said scaleplate and said indicator pointer, and has device for pressure measurement, this device for pressure measurement is configured to corresponding hydrodynamic pressure and rotates said indicator pointer;
Antetheca, this antetheca is formed with circular pilot hole, and is connected in said pressure gauge main body, and said scaleplate is exposed to the external world through said circular pilot hole;
Preset pressure indication piece, this preset pressure indication piece are circular arc along said pressure scale and extend, and an end has first display part, and this preset pressure indication piece is connected in said antetheca slidably along said pilot hole;
Transparency cover, this transparency cover rotatably is connected in said pilot hole, and is configured to cover said preset pressure indication piece and said scaleplate;
Opaque shaded portions, this opaque shaded portions are circular arc along said pressure scale and extend, and are positioned on the said transparency cover, and an end has second display part;
Drive claw, this driving claw portion is positioned on the said transparency cover, and be configured to be positioned at said preset pressure indication piece on driven claw contact, make said preset pressure indication piece carry out servo-actuated and rotate;
Wherein, towards a direction rotation, to set the position of said first display part, said transparency cover rotates said preset pressure indication piece in the opposite direction, to set the position of said second display part through said transparency cover.
2. pressure gauge according to claim 1, wherein, said transparency cover has the operating portion that is used for rotary manipulation.
3. pressure gauge according to claim 1 and 2, wherein, said transparency cover has a plurality of driving claws, and these drive claw and engage with the back side of said antetheca, and said transparency cover rotatably is connected in said antetheca through said driving claw.
CN200980156430XA 2009-02-10 2009-12-22 Pressure meter Expired - Fee Related CN102308193B (en)

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JP2009028066A JP4782849B2 (en) 2009-02-10 2009-02-10 Pressure gauge
PCT/JP2009/071343 WO2010092733A1 (en) 2009-02-10 2009-12-22 Pressure meter

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CN103728001A (en) * 2013-11-19 2014-04-16 平湖市永光机械配件有限公司 Light harvesting tube insertion base of micro-balance
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CN107003156A (en) * 2014-08-07 2017-08-01 爱思科有限公司 Instruction device, particularly pressure gauge
CN111380646A (en) * 2018-12-26 2020-07-07 周文三 Air pressure meter
CN111380646B (en) * 2018-12-26 2022-06-24 周文三 Air pressure meter

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TW201030328A (en) 2010-08-16
CN102308193B (en) 2013-03-20
KR101533749B1 (en) 2015-07-03
KR20110127652A (en) 2011-11-25
US20110290172A1 (en) 2011-12-01
JP4782849B2 (en) 2011-09-28
WO2010092733A1 (en) 2010-08-19
US8978463B2 (en) 2015-03-17
JP2010185666A (en) 2010-08-26
EP2397831A4 (en) 2014-07-02
EP2397831A1 (en) 2011-12-21
TWI487891B (en) 2015-06-11
EP2397831B1 (en) 2017-06-28

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